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首页> 外文期刊>Process Biochemistry >Analyzing Phanerochaete chrysosporium gene expression patterns controlling the molecular fate of lignocellulose degrading enzymes
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Analyzing Phanerochaete chrysosporium gene expression patterns controlling the molecular fate of lignocellulose degrading enzymes

机译:分析Phanerochaete chrysosporium基因表达模式,控制木质纤维素降解酶的分子命运

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The outstanding degrading abilities of Phanerochaete chrysosporium is solely dependent on its lignocellulolytic, aromatic compound degrading and detoxifying enzymes. However, the gene expression and protein turnover of lignocellulolytic enzymes are controlled at cellular level by various genes involved in information storage and processing KOG group. Understanding the gene expression patterns and mechanisms involved in regulation of lignocellulose degrading enzymes will significantly help in strain improvement and developing recombinant strains. To study the common expression patterns, we have retrieved P. chrysosporium gene expression datasets from NCBI GEO and analyzed using GeneSpring (R). software based on the genome wide KOG annotations retrieved from JGI-MycoCosm database. Statistically significant genes obtained from our analysis were separated into replication, repair and recombination, chromatin structure and dynamics, transcription factors, RNA processing and modification and translation, ribosomal structure and biogenesis processes. We have observed various genes encoding for DNA damage, repair and recombination, mRNA splicing, amidases, polyadenylate binding factors, heat shock, helix loop helix, HMG-box, CCAAT (HAP5), CRE-B transcription factors, histone acetyl transferases (MYST, SAGA) commonly expressed among the datasets of natural plant biomass growth substrates. Further studies must be conducted to understand the role and involvement of these significant genes in plant biomass degradation by P. cluysosporium.
机译:Phanerochaete chrysosporium出色的降解能力仅取决于其木质纤维素分解,芳香族化合物的降解和解毒酶。但是,木质素纤维素分解酶的基因表达和蛋白质更新在细胞水平上受信息存储和加工KOG组中涉及的各种基因控制。了解调节木质纤维素降解酶所涉及的基因表达模式和机制将大大有助于菌株改良和开发重组菌株。为了研究常见的表达模式,我们从NCBI GEO检索了金黄色葡萄球菌基因表达数据集,并使用GeneSpring(R)进行了分析。该软件基于从JGI-MycoCosm数据库检索到的全基因组KOG注释。从我们的分析中获得的具有统计学意义的基因被分为复制,修复和重组,染色质结构和动力学,转录因子,RNA加工和修饰与翻译,核糖体结构和生物发生过程。我们已经观察到了编码DNA损伤,修复和重组,mRNA剪接,酰胺酶,聚腺苷酸结合因子,热休克,螺旋环螺旋,HMG-box,CCAAT(HAP5),CRE-B转录因子,组蛋白乙酰转移酶(MYST)的各种基因,SAGA)通常在天然植物生物量生长底物的数据集中表达。必须进行进一步的研究,以了解这些重要基因在球孢假单胞菌降解植物生物量中的作用和参与。

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